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Infectious Linear DNA Sequences Replicating in Simian Virus 40-infected Cells

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Journal J Virol
Date 1977 Feb 1
PMID 189087
Citations 4
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Abstract

A new class of linear duplex DNA structures that contain simian virus 40 (SV40) DNA sequences and that are replicated during productive infection of cells with SV40 is described. These structures comprise up to 35% of the radioactively labeled DNA molecules that can be isolated by selective extraction. These molecules represent a unique size class corresponding to the length of an open SV40 DNA molecule (FO III), and they contain a heterogeneous population of DNA sequences either of host or of viral origin, as shown by restriction endonuclease analysis and nucleic acid hybridization. Part of the FO III DNA molecules contain viral-host DNA sequences covalently linked with each other. They start to replicate with the onset of SV40 superhelix replication 1 day after infection. Their rate of synthesis is most pronounced 3 days after infection when superhelix replication is already declining. Furthermore, they cannot be chased into other structures. At least a fraction of these molecules is infectious when administered together with DEAE-dextran to permissive cells. After intracellular circularization, superhelical DNA FO I with an aberrant cleavage pattern accumulates. In addition, tumor and viral capsid antigen are induced, and infectious viral progeny is obtained. Infection of cells with purified SV40 FO I DNA does not result in FO III DNA molecules in the infected cells or in the viral progeny. It is suggested, therefore, that these FO III DNA molecules are perpetuated within SV40 virus pools by encapsidation into pseudovirions.

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References
1.
Smith H, WILCOX K . A restriction enzyme from Hemophilus influenzae. I. Purification and general properties. J Mol Biol. 1970; 51(2):379-91. DOI: 10.1016/0022-2836(70)90149-x. View

2.
Radloff R, BAUER W, Vinograd J . A dye-buoyant-density method for the detection and isolation of closed circular duplex DNA: the closed circular DNA in HeLa cells. Proc Natl Acad Sci U S A. 1967; 57(5):1514-21. PMC: 224502. DOI: 10.1073/pnas.57.5.1514. View

3.
Streisinger G, Emrich J, Stahl M . Chromosome structure in phage t4, iii. Terminal redundancy and length determination. Proc Natl Acad Sci U S A. 1967; 57(2):292-5. PMC: 335503. DOI: 10.1073/pnas.57.2.292. View

4.
Chowdhury K, Gruss P, Waldeck W, Sauer G . Action of S1 nuclease on nicked circular simian virus 40 DNA. Biochem Biophys Res Commun. 1975; 64(2):709-16. DOI: 10.1016/0006-291x(75)90378-2. View

5.
FRIED A . Temperature dependence of strand separation of the DNA molecules containing integrated SV40 DNA in transformed cells. Nucleic Acids Res. 1975; 2(9):1591-608. PMC: 343526. DOI: 10.1093/nar/2.9.1591. View